Details
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| Parameter | Symbol | Conditions | Min | Typ | Max | Unit |
|---|---|---|---|---|---|---|
| Supply Voltage | VDD | Operating | 1.8 | - | 5.5 | V |
| Quiescent Current | IQ | Per Amplifier, VDD = 2.7V | - | 1.4 | - | 渭A |
| Input Bias Current | IB | VDD = 2.7V, VCM = VDD/2 | - | 20 | - | pA |
| Input Offset Voltage | VOS | VDD = 2.7V | - | 3 | - | mV |
| Common-Mode Rejection Ratio | CMRR | VDD = 2.7V, f = 1 kHz | - | 95 | - | dB |
| Power-Supply Rejection Ratio | PSRR | VDD = 2.7V, f = 1 kHz | - | 95 | - | dB |
| Slew Rate | SR | VDD = 2.7V | - | 0.4 | - | V/渭s |
| Bandwidth | BW | VDD = 2.7V, G = +1, VO = 0.5Vpp | - | 1.2 | - | MHz |
| Output Voltage Swing | VOSW | VDD = 2.7V, IL = 卤1mA | 0.2 | - | 2.5 | V |
Instructions for Use:
Supply Voltage (VDD):
- Ensure the supply voltage is within the range of 1.8V to 5.5V.
- Avoid exceeding these limits to prevent damage to the device.
Quiescent Current (IQ):
- The quiescent current per amplifier is typically 1.4 渭A at 2.7V. This value helps in power budgeting for low-power applications.
Input Bias Current (IB):
- The input bias current is very low, typically 20 pA at 2.7V. This ensures minimal loading on the signal source.
Input Offset Voltage (VOS):
- The input offset voltage is typically 3 mV at 2.7V. This should be considered when designing precision circuits.
Common-Mode Rejection Ratio (CMRR):
- The CMRR is 95 dB at 2.7V and 1 kHz, indicating good rejection of common-mode signals.
Power-Supply Rejection Ratio (PSRR):
- The PSRR is 95 dB at 2.7V and 1 kHz, which helps in maintaining output stability despite supply voltage variations.
Slew Rate (SR):
- The slew rate is 0.4 V/渭s at 2.7V, which is suitable for most general-purpose applications.
Bandwidth (BW):
- The bandwidth is 1.2 MHz at 2.7V with a gain of +1 and a 0.5Vpp output swing, making it suitable for audio and other analog signal processing.
Output Voltage Swing (VOSW):
- The output voltage swing is from 0.2V to 2.5V at 2.7V with a load current of 卤1mA. Ensure that the load does not exceed this range to avoid distortion.
Additional Notes:
- Always refer to the datasheet for detailed specifications and application notes.
- Proper PCB layout and decoupling capacitors are essential for stable operation.
- For optimal performance, use the device within its specified operating conditions.
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